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Efficient and Robust Video Steganography Algorithms for Secure Data Communication

机译:用于安全数据通信的高效且稳健的视频隐写算法

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摘要

Over the last two decades, the science of secretly embedding and communicating data has gained tremendous significance due to the technological advancement in communication and digital content. Steganography is the art of concealing secret data in a particular interactive media transporter such as text, audio, image, and video data in order to build a covert communication between authorized parties. Nowadays, video steganography techniques are important in many video-sharing and social networking applications such as Livestreaming, YouTube, Twitter, and Facebook because of noteworthy developments in advanced video over the Internet. The performance of any steganography method, ultimately, relies on the imperceptibility, hiding capacity, and robustness against attacks. Although many video steganography methods exist, several of them lack the preprocessing stages. In addition, less security, low embedding capacity, less imperceptibility, and less robustness against attacks are other issues that affect these algorithms. This dissertation investigates and analyzes cutting edge video steganography techniques in both compressed and raw domains. Moreover, it provides solutions for the aforementioned problems by proposing new and effective methods for digital video steganography. The key objectives of this research are to develop: 1) a highly secure video steganography algorithm based on error correcting codes (ECC); 2) an increased payload video steganography algorithm in the discrete wavelet domain based on ECC; 3) a novel video steganography algorithm based on Kanade-Lucas-Tomasi (KLT) tracking and ECC; 4) a robust video steganography algorithm in the wavelet domain based on KLT tracking and ECC; 5) a new video steganography algorithm based on the multiple object tracking (MOT) and ECC; and 6) a robust and secure video steganography algorithm in the discrete wavelet and discrete cosine transformations based on MOT and ECC. The experimental results from our research demonstrate that our proposed algorithms achieve higher embedding capacity as well as better imperceptibility of stego videos. Furthermore, the preprocessing stages increase the security and robustness of the proposed algorithms against attacks when compared to state-of-the-art steganographic methods.
机译:在过去的二十年中,由于通信和数字内容的技术进步,秘密地嵌入和传递数据的科学已变得具有重要意义。隐秘术是在特定的交互式媒体传输器中隐藏秘密数据的技术,例如文本,音频,图像和视频数据,以便在授权方之间建立秘密通信。如今,由于互联网上高级视频的显着发展,视频隐写技术在许多视频共享和社交网络应用程序(例如Livestreaming,YouTube,Twitter和Facebook)中都很重要。任何隐写术方法的性能最终都取决于不易察觉性,隐藏能力和抵抗攻击的鲁棒性。尽管存在许多视频隐写方法,但其中一些缺少预处理阶段。另外,影响这些算法的其他问题还包括安全性差,嵌入能力低,不易察觉性以及对攻击的鲁棒性较低。本文研究和分析了压缩和原始领域中的尖端视频隐写技术。而且,通过提出用于数字视频隐写术的新的有效方法,它为上述问题提供了解决方案。这项研究的主要目标是开发:1)基于纠错码(ECC)的高度安全的视频隐写算法; 2)基于ECC的离散小波域中增加的有效载荷视频隐写算法; 3)一种基于Kanade-Lucas-Tomasi(KLT)跟踪和ECC的新型视频隐写算法; 4)基于KLT跟踪和ECC的小波域鲁棒视频隐写算法; 5)一种新的基于多目标跟踪(MOT)和ECC的视频隐写算法; 6)基于MOT和ECC的离散小波和离散余弦变换中的鲁棒和安全的视频隐写算法。我们研究的实验结果表明,我们提出的算法可实现更高的嵌入能力以及更好的隐身视频感知能力。此外,与最新的隐写方法相比,预处理阶段提高了所提出算法针对攻击的安全性和鲁棒性。

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  • 作者

    Mstafa Ramadhan J.;

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  • 年度 2017
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  • 正文语种 en_US
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